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Temporal mapping of CEBPA and CEBPB binding during liver regeneration reveals dynamic occupancy and specific regulatory codes for homeostatic and cell cycle gene batteries

机译:肝再生过程中CEBPA和CEBPB结合的时间作图揭示了动态占用和稳态和细胞周期基因电池的特定调控代码

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摘要

Dynamic shifts in transcription factor binding are central to the regulation of biological processes by allowing rapid changes in gene transcription. However, very few genome-wide studies have examined how transcription factor occupancy is coordinated temporally in vivo in higher animals. Here, we quantified the genome-wide binding patterns of two key hepatocyte transcription factors, CEBPA and CEBPB (also known as C/EBPalpha and C/EBPbeta), at multiple time points during the highly dynamic process of liver regeneration elicited by partial hepatectomy in mouse. Combining these profiles with RNA polymerase II binding data, we find three temporal classes of transcription factor binding to be associated with distinct sets of regulated genes involved in the acute phase response, metabolic/homeostatic functions, or cell cycle progression. Moreover, we demonstrate a previously unrecognized early phase of homeostatic gene expression prior to S-phase entry. By analyzing the three classes of CEBP bound regions, we uncovered mutually exclusive sets of sequence motifs, suggesting temporal codes of CEBP recruitment by differential cobinding with other factors. These findings were validated by sequential ChIP experiments involving a panel of central transcription factors and/or by comparison to external ChIP-seq data. Our quantitative investigation not only provides in vivo evidence for the involvement of many new factors in liver regeneration but also points to similarities in the circuitries regulating self-renewal of differentiated cells. Taken together, our work emphasizes the power of global temporal analyses of transcription factor occupancy to elucidate mechanisms regulating dynamic biological processes in complex higher organisms.
机译:转录因子结合的动态变化通过允许基因转录的快速变化,对生物过程的调节至关重要。然而,极少数全基因组研究检查了高等动物体内转录因子的占用如何在时间上协调。在这里,我们量化了部分肝切除引起的肝脏再生的高度动态过程中的多个时间点,两个关键的肝细胞转录因子CEBPA和CEBPB(也称为C / EBPalpha和C / EBPbeta)的全基因组结合模式。老鼠。将这些配置文件与RNA聚合酶II结合数据结合起来,我们发现转录因子结合的三个时间类别与参与急性期反应,代谢/体内稳态或细胞周期进程的调控基因的不同集合相关。此外,我们证明了之前无法识别的稳态基因表达的早期进入S期。通过分析CEBP绑定区域的三类,我们发现了互斥的序列基序集,暗示了CEBP募集的时间代码是通过与其他因素的差异结合而实现的。通过一系列涉及一组中央转录因子的ChIP实验和/或通过与外部ChIP-seq数据进行比较,验证了这些发现。我们的定量研究不仅为体内许多新因素参与肝再生提供了体内证据,而且还指出了调节分化细胞自我更新的电路中的相似之处。总之,我们的工作强调了转录因子占用的全局时间分析的力量,以阐明调节复杂高级生物中动态生物过程的机制。

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